Area of research
Artificial Intelligence · Atomic and Molecular Physics, and Optics
Research interest
Research interests include Random lasers and scattering media, Quantum Information and Cryptography, Neural Networks and Reservoir Computing, and Orbital Angular Momentum in Optics.
High-dimensional coherent one-way quantum key distribution
High-dimensional quantum key distribution using a multi-plane light converter
Experimental Certification of High-Dimensional Entanglement with Randomized Measurements
Rapid and efficient wavefront correction for spatially entangled photons using symmetrized optimization
Building and aligning a 10-plane light converter
Fundamental bounds of wavefront shaping of spatially entangled photons
Resource-efficient photonic quantum computation with high-dimensional cluster states
Tutorial: How to build and control an all-fiber wavefront modulator using mechanical perturbations
Characterization and Exploitation of the Rotational Memory Effect in Multimode Fibers
Experimental high-dimensional quantum key distribution using a multi-plane light converter
Spectral shaping in a multimode fiber by all-fiber modulation
Shaping single photons through multimode optical fibers using mechanical perturbations
Coherent backscattering of entangled photon pairs
Roadmap on wavefront shaping and deep imaging in complex media
Quantum light in complex media and its applications
Processing Entangled Photons in High Dimensions with a Programmable Light Converter
All-fiber source and sorter for multimode correlated photons
Soliton-pair dynamical transition in mode-locked lasers
Coherent Backscattering of Entangled Photon Pairs
Image Transmission Through a Dynamically Perturbed Multimode Fiber by Deep Learning
Learning and Avoiding Disorder in Multimode Fibers
Shaping entangled photons through emulated turbulent atmosphere
High-Speed Random-Channel Cryptography in Multimode Fibers
All-Fiber Source and Sorter for Multimode Correlated Photons
Wavefront shaping in multimode fibers by transmission matrix engineering
Real-time shaping of entangled photons by classical control and feedback
Real-Time Shaping of Entangled Photons by Classical Control and Feedback
Creating and controlling complex light
Remote key establishment by random mode mixing in multimode fibers and optical reciprocity